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MAC4LDF

Sigma-Aldrich

MetaPolyzyme, DNA free

Suitable for Microbiome research, lyophilized powder

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Quality Level

form

lyophilized powder

feature

DNA free

technique(s)

DNA extraction: suitable

suitability

suitable for microbiology

application(s)

microbiology

shipped in

wet ice

storage temp.

−20°C

Related Categories

General description

Metagenomics analysis looks at all DNA that has been isolated directly from given single samples (e.g. environmental samples, biological organisms). Metagenomics allows for the investigation of microbes that exist in any environment (including extreme environments), and which have been historically difficult to isolate, culture, and study. Metagenomics has revealed the existence of novel microbial species. Applications of metagenomic studies include public health data analysis, discovery of novel proteins, enzymes and natural products, environmental studies, and agricultural investigations.

MetaPolyzyme products (MAC4L and MAC4LDF) are based on a multi-lytic enzyme mixture formulated for effective lysis of Microbiome samples from extreme environments. Originally developed by Scott Tighe for use in microbiome and DNA extraction efficiency studies, the products were evaluated and developed in consultation and collaboration with the Association of Biomolecular Resource Facilities (ABRF) Metagenomics and Microbiome Research Group (MMRG; formerly the Metagenomics Research Group, MGRG).1-4 Several publications have cited use of MetaPolyzyme.5-7

Application

Our experts have shown that using MetaPolyzyme, DNA free in a microbial study can increase final DNA concentration by approximately 2X, and increase the number of taxa identified. It is useful for low biomass samples for lysing cells without contributing to DNA background contamination. Learn more about the experiments and data by reviewing our technical article – MetaPolyzyme, DNA Free Cell Lysis Enzymes for Microbiome Workflows.

The study of microbial communities has been revolutionized in recent years by the widespread adoption of culture independent analytical techniques such as 16S rRNA gene sequencing and metagenomics. Since DNA contamination during sample preparation is a major problem of these sequence-based approaches, DNA extraction reagents free of DNA contaminants are essential. MetaPolyzyme, DNA free, undergoes strict quality control testing to ensure the absence of detectable levels of contaminating microbial DNA using 35 cycles PCR amplification of 16S and 18S rDNA using universal primer sets.

The need for DNA free reagents led to the development of MetaPolyzyme, DNA free, which is essential when there is a need to minimize microbial DNA contamination from reagents during microbiome studies.

Features and Benefits

Multi-lytic enzyme mixture designed for effective lysis of microbiome samples

DNA-free formulation minimizes contamination

Ideal for low biomass samples

Strict quality control testing ensures absence of detectable levels of contaminating microbial DNA

Increases final DNA concentration and number of taxa identified

Components

The enzymes in MetaPolzyme, DNA free are:

  • Mutanolysin
  • Achromopeptidase
  • Chitinase
  • Lyticase
  • Lysostaphin
  • Lysozyme

All the enzymes are individually tested for absence of contaminating microbial DNA using 16S and 18S PCR amplification

Pictograms

Health hazard

Signal Word

Danger

Hazard Statements

Precautionary Statements

Hazard Classifications

Resp. Sens. 1

Storage Class Code

11 - Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Regulatory Information

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Articles

Explore the benefits of MetaPolyzyme, DNA free to improve DNA extraction and increase the number of taxa identified in treated samples.

Enzymes provide a non-mechanical method for cell lysis and protoplast preparation. It may seem like a simple process to throw in your enzyme, stick your tube in the water-bath and walk away, but what is actually going on in that process?

Our team of scientists has experience in all areas of research including Life Science, Material Science, Chemical Synthesis, Chromatography, Analytical and many others.

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